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Tatjana Dedova
标题
引用次数
引用次数
年份
Nanostructured solar cell based on spray pyrolysis deposited ZnO nanorod array
M Krunks, A Katerski, T Dedova, IO Acik, A Mere
Solar Energy Materials and Solar Cells 92 (9), 1016-1019, 2008
2152008
Comparative study of nano-structured CdS thin films prepared by CBD and spray pyrolysis: annealing effect
J Hiie, T Dedova, V Valdna, K Muska
Thin Solid Films 511, 443-447, 2006
1612006
Spray pyrolysis deposition of zinc oxide nanostructured layers
M Krunks, T Dedova, IO Açik
Thin Solid Films 515 (3), 1157-1160, 2006
1212006
Extremely thin absorber layer solar cells on zinc oxide nanorods by chemical spray
M Krunks, E Kärber, A Katerski, K Otto, IO Acik, T Dedova, A Mere
Solar Energy Materials and Solar Cells 94 (7), 1191-1195, 2010
842010
Photoluminescence of spray pyrolysis deposited ZnO nanorods
E Kärber, T Raadik, T Dedova, J Krustok, A Mere, V Mikli, M Krunks
Nanoscale research letters 6, 1-7, 2011
812011
ZnO nanorods via spray deposition of solutions containing zinc chloride and thiocarbamide
T Dedova, O Volobujeva, J Klauson, A Mere, M Krunks
Nanoscale Research Letters 2, 391-396, 2007
642007
A novel deposition method to grow ZnO nanorods: Spray pyrolysis
T Dedova, M Krunks, M Grossberg, O Volobujeva, IO Acik
Superlattices and Microstructures 42 (1-6), 444-450, 2007
602007
ZnS thin films deposited by spray pyrolysis technique
T Dedova, M Krunks, O Volobujeva, I Oja
physica status solidi (c) 2 (3), 1161-1166, 2005
462005
Nanostructured solar cell by spray pyrolysis: Effect of titania barrier layer on the cell performance
IO Acik, A Katerski, A Mere, J Aarik, A Aidla, T Dedova, M Krunks
Thin Solid Films 517 (7), 2443-2447, 2009
432009
Surface properties of sprayed and electrodeposited ZnO rod layers
I Gromyko, M Krunks, T Dedova, A Katerski, D Klauson, IO Acik
Applied Surface Science 405, 521-528, 2017
412017
Effect of substrate morphology on the nucleation and growth of ZnO nanorods prepared by spray pyrolysis
T Dedova, IO Acik, M Krunks, V Mikli, O Volobujeva, A Mere
Thin Solid Films 520 (14), 4650-4653, 2012
352012
Study on photocatalytic activity of ZnO nanoneedles, nanorods, pyramids and hierarchical structures obtained by spray pyrolysis method
D Klauson, I Gromyko, T Dedova, N Pronina, M Krichevskaya, ...
Materials Science in Semiconductor Processing 31, 315-324, 2015
332015
Growth and electrical properties of ZnO nanorod arrays prepared by chemical spray pyrolysis
M Krunks, T Dedova, E Kärber, V Mikli, IO Acik, M Grossberg, A Mere
Physica B: Condensed Matter 404 (22), 4422-4425, 2009
322009
Nickel oxide films by chemical spray: Effect of deposition temperature and solvent type on structural, optical, and surface properties
Z Chen, T Dedova, IO Acik, M Danilson, M Krunks
Applied Surface Science 548, 149118, 2021
312021
Effect of Zn: S molar ratio in solution on the properties of ZnS thin films and the formation of ZnS nanorods by spray pyrolysis
T Dedova, M Krunks, I Gromyko, V Mikli, I Sildos, K Utt, T Unt
physica status solidi (a) 211 (2), 514-521, 2014
282014
Chemical spray deposition of zinc oxide nanostructured layers from zinc acetate solutions
T Dedova, J Klauson, C Badre, T Pauporté, R Nisumaa, A Mere, ...
physica status solidi (a) 205 (10), 2355-2359, 2008
282008
Hierarchical nanostructures of ZnO obtained by spray pyrolysis
T Dedova, M Krunks, IO Acik, D Klauson, O Volobujeva, A Mere
Materials Chemistry and Physics 141 (1), 69-75, 2013
262013
Research in solar cell technologies at Tallinn University of Technology
E Mellikov, M Altosaar, M Krunks, J Krustok, T Varema, O Volobujeva, ...
Thin Solid Films 516 (20), 7125-7134, 2008
262008
ZnO/NiO heterostructures with enhanced photocatalytic activity obtained by ultrasonic spraying of a NiO shell onto ZnO nanorods
Z Chen, T Dedova, N Spalatu, N Maticiuc, M Rusu, A Katerski, IO Acik, ...
Colloids and Surfaces A: Physicochemical and Engineering Aspects 648, 129366, 2022
232022
Photovoltaic cell based on zinc oxide nanorods and method for making the same
M Krunks, A Katerski, T Dedova, A Mere, IO Acik
US Patent 8,614,393, 2013
222013
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